Matches in SemOpenAlex for { <https://semopenalex.org/work/W2309543727> ?p ?o ?g. }
- W2309543727 endingPage "20160285" @default.
- W2309543727 startingPage "20160285" @default.
- W2309543727 abstract "Plants display extensive intraspecific variation in secondary metabolites. However, the selective forces shaping this diversity remain often unknown, especially below ground. Using Taraxacum officinale and its major native insect root herbivore Melolontha melolontha , we tested whether below-ground herbivores drive intraspecific variation in root secondary metabolites. We found that high M. melolontha infestation levels over recent decades are associated with high concentrations of major root latex secondary metabolites across 21 central European T. officinale field populations. By cultivating offspring of these populations, we show that both heritable variation and phenotypic plasticity contribute to the observed differences. Furthermore, we demonstrate that the production of the sesquiterpene lactone taraxinic acid β- d -glucopyranosyl ester (TA-G) is costly in the absence, but beneficial in the presence of M. melolontha , resulting in divergent selection of TA-G. Our results highlight the role of soil-dwelling insects for the evolution of plant defences in nature." @default.
- W2309543727 created "2016-06-24" @default.
- W2309543727 creator A5003059316 @default.
- W2309543727 creator A5023877477 @default.
- W2309543727 creator A5036658903 @default.
- W2309543727 creator A5037992992 @default.
- W2309543727 creator A5050783357 @default.
- W2309543727 creator A5058495516 @default.
- W2309543727 creator A5071511664 @default.
- W2309543727 date "2016-03-30" @default.
- W2309543727 modified "2023-09-27" @default.
- W2309543727 title "A below-ground herbivore shapes root defensive chemistry in natural plant populations" @default.
- W2309543727 cites W1022858248 @default.
- W2309543727 cites W1504238883 @default.
- W2309543727 cites W1583030352 @default.
- W2309543727 cites W1839785851 @default.
- W2309543727 cites W1896103524 @default.
- W2309543727 cites W1933020409 @default.
- W2309543727 cites W1970237913 @default.
- W2309543727 cites W1972153212 @default.
- W2309543727 cites W1972906247 @default.
- W2309543727 cites W1986361512 @default.
- W2309543727 cites W2002040947 @default.
- W2309543727 cites W2007550375 @default.
- W2309543727 cites W2016044810 @default.
- W2309543727 cites W2019845000 @default.
- W2309543727 cites W2020302957 @default.
- W2309543727 cites W2028088096 @default.
- W2309543727 cites W2043442214 @default.
- W2309543727 cites W2044177767 @default.
- W2309543727 cites W2051004220 @default.
- W2309543727 cites W2057868224 @default.
- W2309543727 cites W2058248090 @default.
- W2309543727 cites W2064063939 @default.
- W2309543727 cites W2077635192 @default.
- W2309543727 cites W2078663788 @default.
- W2309543727 cites W2085587146 @default.
- W2309543727 cites W2086306484 @default.
- W2309543727 cites W2097277150 @default.
- W2309543727 cites W2104047350 @default.
- W2309543727 cites W2107452930 @default.
- W2309543727 cites W2112337283 @default.
- W2309543727 cites W2113092783 @default.
- W2309543727 cites W2114594449 @default.
- W2309543727 cites W2131373051 @default.
- W2309543727 cites W2132248297 @default.
- W2309543727 cites W2134272176 @default.
- W2309543727 cites W2138561321 @default.
- W2309543727 cites W2140924108 @default.
- W2309543727 cites W2142485918 @default.
- W2309543727 cites W2148032599 @default.
- W2309543727 cites W2152249327 @default.
- W2309543727 cites W2153189934 @default.
- W2309543727 cites W2157314891 @default.
- W2309543727 cites W2159689354 @default.
- W2309543727 cites W2160025325 @default.
- W2309543727 cites W2165155425 @default.
- W2309543727 cites W2182762988 @default.
- W2309543727 cites W2225656222 @default.
- W2309543727 cites W2265320716 @default.
- W2309543727 cites W2322715144 @default.
- W2309543727 cites W2323315552 @default.
- W2309543727 cites W2327426319 @default.
- W2309543727 cites W4230096730 @default.
- W2309543727 doi "https://doi.org/10.1098/rspb.2016.0285" @default.
- W2309543727 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/4822473" @default.
- W2309543727 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/27009228" @default.
- W2309543727 hasPublicationYear "2016" @default.
- W2309543727 type Work @default.
- W2309543727 sameAs 2309543727 @default.
- W2309543727 citedByCount "24" @default.
- W2309543727 countsByYear W23095437272016 @default.
- W2309543727 countsByYear W23095437272017 @default.
- W2309543727 countsByYear W23095437272018 @default.
- W2309543727 countsByYear W23095437272019 @default.
- W2309543727 countsByYear W23095437272020 @default.
- W2309543727 countsByYear W23095437272021 @default.
- W2309543727 countsByYear W23095437272022 @default.
- W2309543727 countsByYear W23095437272023 @default.
- W2309543727 crossrefType "journal-article" @default.
- W2309543727 hasAuthorship W2309543727A5003059316 @default.
- W2309543727 hasAuthorship W2309543727A5023877477 @default.
- W2309543727 hasAuthorship W2309543727A5036658903 @default.
- W2309543727 hasAuthorship W2309543727A5037992992 @default.
- W2309543727 hasAuthorship W2309543727A5050783357 @default.
- W2309543727 hasAuthorship W2309543727A5058495516 @default.
- W2309543727 hasAuthorship W2309543727A5071511664 @default.
- W2309543727 hasBestOaLocation W23095437271 @default.
- W2309543727 hasConcept C131892835 @default.
- W2309543727 hasConcept C142724271 @default.
- W2309543727 hasConcept C188947578 @default.
- W2309543727 hasConcept C18903297 @default.
- W2309543727 hasConcept C204787440 @default.
- W2309543727 hasConcept C2776211264 @default.
- W2309543727 hasConcept C2776451879 @default.
- W2309543727 hasConcept C2776500997 @default.
- W2309543727 hasConcept C2777612826 @default.
- W2309543727 hasConcept C2778804639 @default.